ArticleMicrobial biotechnology2022
Water is a preservative of microbes.
Article in Microbial biotechnology, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 19 papers.
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Who cites it
19 citing papers in PubMed, 56 citations in OpenAlex.
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- Extremophilic and common fungi in acid brines and their halite.Extremophiles : life under extreme conditions · 2025Article
- Effect of polishing methods on Candida albicans adhesion and contributing factors in heat-cured acrylic dentures: an in-vitro comparative study.BMC oral health · 2025Article
- NewStudies in mycology · 2024Article
- Quantifying fecal and plasma short-chain fatty acids in healthy Thai individuals.Computational and structural biotechnology journal · 2024Article
- Investigation of the Fermentation Process ofAntioxidants (Basel, Switzerland) · 2024Article
- Water Quality Trade-offs for Risk Management Interventions in a Green Building.Environmental science : water research & technology · 2024Article
- A Novel Comprehensive Therapeutic Approach to the Challenges of Chronic Wounds: A Brief Review and Clinical Experience Report.Advances in therapy · 2024Review
- Microbial communities in the Dead Sea and their potential biotechnological applications.Communicative & integrative biology · 2024Review
- Scientific novelty beyond the experiment.Microbial biotechnology · 2023Article
- Preparation and Application of Directed Vat Set Indigenous Freeze-DryingFoods (Basel, Switzerland) · 2023Article
- Silicon nanoparticles: A promising approach for control ofIranian journal of basic medical sciences · 2023Article
- Extremely chaotolerant and kosmotolerantFrontiers in microbiology · 2023Article
- Biophysical Manipulation of the Extracellular Environment byPathogens (Basel, Switzerland) · 2022Article
- The growth-survival trade-off is hard-wired in the Lactococcus lactis gene regulation network.Environmental microbiology reports · 2022Article
- Water is a preservative of microbes.Microbial biotechnology · 2022Article
- The darkest microbiome-a post-human biosphere.Microbial biotechnology · 2022Article
Corrections and comments
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Authors and funding
1 author at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Water is the cellular milieu, drives all biochemistry within Earth's biosphere and facilitates microbe-mediated decay processes. Instead of reviewing these topics, the current article focuses on the activities of water as a preservative-its capacity to maintain the long-term integrity and viability of microbial cells-and identifies the mechanisms by which this occurs. Water provides for, and maintains, cellular structures; buffers against thermodynamic extremes, at various scales; can mitigate events that are traumatic to the cell membrane, such as desiccation-rehydration, freeze-thawing and thermal shock; prevents microbial dehydration that can otherwise exacerbate oxidative damage; mitigates against biocidal factors (in some circumstances reducing ultraviolet radiation and diluting solute stressors or toxic substances); and is effective at electrostatic screening so prevents damage to the cell by the intense electrostatic fields of some ions. In addition, the water retained in desiccated cells (historically referred to as 'bound' water) plays key roles in biomacromolecular structures and their interactions even for fully hydrated cells. Assuming that the components of the cell membrane are chemically stable or at least repairable, and the environment is fairly constant, water molecules can apparently maintain membrane geometries over very long periods provided these configurations represent thermodynamically stable states. The spores and vegetative cells of many microbes survive longer in the presence of vapour-phase water (at moderate-to-high relative humidities) than under more-arid conditions. There are several mechanisms by which large bodies of water, when cooled during subzero weather conditions remain in a liquid state thus preventing potentially dangerous (freeze-thaw) transitions for their microbiome. Microbial life can be preserved in pure water, freshwater systems, seawater, brines, ice/permafrost, sugar-rich aqueous milieux and vapour-phase water according to laboratory-based studies carried out over periods of years to decades and some natural environments that have yielded cells that are apparently thousands, or even (for hypersaline fluid inclusions of mineralized NaCl) hundreds of millions, of years old. The term preservative has often been restricted to those substances used to extend the shelf life of foods (e.g. sodium benzoate, nitrites and sulphites) or those used to conserve dead organisms, such as ethanol or formaldehyde. For living microorganisms however, the ultimate preservative may actually be water. Implications of this role are discussed with reference to the ecology of halophiles, human pathogens and other microbes; food science; biotechnology; biosignatures for life and other aspects of astrobiology; and the large-scale release/reactivation of preserved microbes caused by global climate change.
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What Socratic holds
Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.